TY - JOUR
T1 - Diabetic Nephropathy
T2 - Novel Molecular Mechanisms and Therapeutic Targets
AU - Zoja, Carlamaria
AU - Xinaris, Christodoulos
AU - Macconi, Daniela
N1 - Publisher Copyright:
© Copyright © 2020 Zoja, Xinaris and Macconi.
PY - 2020/12/21
Y1 - 2020/12/21
N2 - Diabetic nephropathy (DN) is one of the major microvascular complications of diabetes mellitus and the leading cause of end-stage kidney disease. The standard treatments for diabetic patients are glucose and blood pressure control, lipid lowering, and renin-angiotensin system blockade; however, these therapeutic approaches can provide only partial renoprotection if started late in the course of the disease. One major limitation in developing efficient therapies for DN is the complex pathobiology of the diabetic kidney, which undergoes a set of profound structural, metabolic and functional changes. Despite these difficulties, experimental models of diabetes have revealed promising therapeutic targets by identifying pathways that modulate key functions of podocytes and glomerular endothelial cells. In this review we will describe recent advances in the field, analyze key molecular pathways that contribute to the pathogenesis of the disease, and discuss how they could be modulated to prevent or reverse DN.
AB - Diabetic nephropathy (DN) is one of the major microvascular complications of diabetes mellitus and the leading cause of end-stage kidney disease. The standard treatments for diabetic patients are glucose and blood pressure control, lipid lowering, and renin-angiotensin system blockade; however, these therapeutic approaches can provide only partial renoprotection if started late in the course of the disease. One major limitation in developing efficient therapies for DN is the complex pathobiology of the diabetic kidney, which undergoes a set of profound structural, metabolic and functional changes. Despite these difficulties, experimental models of diabetes have revealed promising therapeutic targets by identifying pathways that modulate key functions of podocytes and glomerular endothelial cells. In this review we will describe recent advances in the field, analyze key molecular pathways that contribute to the pathogenesis of the disease, and discuss how they could be modulated to prevent or reverse DN.
KW - angiotensin 1–7
KW - diabetic nephropathy
KW - hypoxia inducible factor
KW - notch signaling
KW - renin-angiotensin system
KW - sirtuins
KW - sodium-glucose cotransporter 2
KW - thyroid hormone signaling
UR - https://www.scopus.com/pages/publications/85098752828
U2 - 10.3389/fphar.2020.586892
DO - 10.3389/fphar.2020.586892
M3 - Review article
AN - SCOPUS:85098752828
SN - 1663-9812
VL - 11
JO - Frontiers in Pharmacology
JF - Frontiers in Pharmacology
M1 - 586892
ER -